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An Inquisitive into the Indirect Measurement and Comparison of the Viscosity of Nanoconfined Polystyrene Nanoparticles

机译:纳米受限聚苯乙烯纳米粒子的间接测量和粘度比较的质疑

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摘要

The effects of nanoconfinement on the dynamic and the glass transition (T_g) of polymers remains the focus of a lot of research since over a decade. Particularly, the glass transition temperature (T_g) and the dynamic of polystyrene (PS) were found to be altered by nanoconfinement in thin films and on the bulk free-surface. However, the dynamic of polymer nanoconfined in nanoparticles has not been investigated, even though the close-packed nanoparticle geometry is commonly used in many applications such as waterborne coatings. We investigate the dynamic of polystyrene in nanoparticles by monitoring the closure of voids (interstices) between PS nanoparticles in the close-packed structure. Void-closure during the passage from the close-packed particles to bulk PS is monitored using small angle neutron scattering at the bulk T_g (100 ℃). The relaxation time (τ) and the apparent viscosity (η) of nanoconfined polystyrene estimated from the void-closure decay is found to decrease only by ~2 times for particle diameters between 93 nm and 42 nm. These results infer that dynamic of nanoconfined PS in nanoparticles at the bulk T_g is not different from that of bulk polystyrene.
机译:十多年来,纳米约束对聚合物的动态和玻璃化转变(T_g)的影响仍然是许多研究的重点。特别地,发现通过纳米约束作用在薄膜中和在本体自由表面上改变了玻璃化转变温度(T_g)和聚苯乙烯(PS)的动力学。然而,尽管密堆积的纳米颗粒几何形状通常用于许多应用中,例如水性涂料,但尚未研究纳米颗粒中聚合物纳米颗粒的动力学。我们通过监测密排结构中PS纳米颗粒之间的空隙(空隙)的闭合来研究聚苯乙烯在纳米颗粒中的动力学。使用密堆积T_g(100℃)下的小角度中子散射来监测从密堆积颗粒到堆积PS的空洞封闭。发现对于空隙直径在93 nm至42 nm之间,由孔隙封闭衰减估算的纳米约束聚苯乙烯的弛豫时间(τ)和表观粘度(η)仅下降约2倍。这些结果表明,在纳米颗粒T_g处,纳米约束PS的动力学与整体聚苯乙烯的动力学没有区别。

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